As shown in the figure, 3 tanks are connected to each other with a piping system. Assuming that the diameter (D) of all pipes used is 0.35 m and the friction factor (f) is 0.025, calculate the flow rate of the fluid leaving/entering each tank. Since the pipes are long, local losses (hardware losses) can be neglected. Z-30 m (1) ₁ = 300 m 2 = 150 m Z-6m (2) €31 = 120 m z=0m |

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
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As shown in the figure, 3 tanks are connected to each other with a piping system. Assuming that the diameter (D) of all pipes used is 0.35 m and the friction factor (f) is 0.025, calculate the flow rate of the fluid leaving/entering each tank. Since the pipes are long, local losses (hardware losses) can be neglected.

As shown in the figure, 3 tanks are connected to each other with a piping system. Assuming that the
diameter (D) of all pipes used is 0.35 m and the friction factor (f) is 0.025, calculate the flow rate of
the fluid leaving/entering each tank. Since the pipes are long, local losses (hardware losses) can be
neglected.
Z-30 m
(1)
₁ = 300 m
2 = 150 m
Z-6m
(2)
€31
= 120 m
z=0m
|
Transcribed Image Text:As shown in the figure, 3 tanks are connected to each other with a piping system. Assuming that the diameter (D) of all pipes used is 0.35 m and the friction factor (f) is 0.025, calculate the flow rate of the fluid leaving/entering each tank. Since the pipes are long, local losses (hardware losses) can be neglected. Z-30 m (1) ₁ = 300 m 2 = 150 m Z-6m (2) €31 = 120 m z=0m |
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